Ghosh Debashis, Griswold Jennifer B, Bevilacqua Thomas, Gonzalez-Fernandez Federico
Hauptman-Woodward Medical Research Institute, Buffalo, New York 14203, USA.
Mol Vis. 2007 Dec 13;13:2275-81.
Interphotoreceptor retinol-binding protein (IRBP), composed of two or four homologous modules in tandem, plays an important role in retinoid trafficking between the retinal pigmented epithelium, photoreceptors, and Müller cells. The exact nature of this role is not yet clear. Attempts to purify the full-length retinal IRBP to homogeneity for crystallization purposes have largely been unsuccessful, owing primarily to instability and denaturation of the protein at high concentrations in aqueous media.
A bacterial expression system was used for the production of the recombinant full-length four modules-containing Xenopus IRBP (xIRBP; 1197 amino acids; 131 kDa). An optimized purification strategy and the presence of molar excesses of a thiol-based reducing agent yielded highly pure xIRBP in a soluble, stable and active form, free of its fusion partner. Binding of all-trans retinol was characterized by fluorescence spectroscopy monitoring ligand-fluorescence enhancement, quenching of endogenous protein fluorescence, and energy transfer.
We grew the first diffraction-quality crystal of xIRBP. We have gathered diffraction data from these crystals to 2.46 A resolution, sufficient to yield an atomic model of the tertiary structure of IRBP. Retinol-binding results determined by fluorescence spectroscopy show roughly one retinol-binding site per polypeptide chain.
The binding stoichiometry taken together with modeling data suggest that not all modules are functionally equivalent. Determination of the full-length IRBP structure will be a significant breakthrough in understanding the functional roles of IRBP in the visual cycle. The advances presented here will not only lead to the structure of the full-length IRBP, but will allow us to understand how the modules interact in the function of IRBP. Furthermore, these studies will allow characterization of the ligand-binding site(s) with bound ligand(s).
细胞间视黄醇结合蛋白(IRBP)由两个或四个串联的同源模块组成,在视网膜色素上皮细胞、光感受器和米勒细胞之间的视黄醇转运中起重要作用。该作用的确切性质尚不清楚。为了结晶目的将全长视网膜IRBP纯化至同质的尝试大多未成功,主要原因是该蛋白在水性介质中高浓度时不稳定且会变性。
使用细菌表达系统生产重组全长含四个模块的非洲爪蟾IRBP(xIRBP;1197个氨基酸;131 kDa)。优化的纯化策略以及摩尔过量的硫醇基还原剂的存在产生了高度纯净的、可溶、稳定且有活性的xIRBP,且不含其融合伴侣。通过荧光光谱监测配体荧光增强、内源性蛋白质荧光猝灭和能量转移来表征全反式视黄醇的结合。
我们培养出了xIRBP的首个具有衍射质量的晶体。我们已从这些晶体收集了分辨率达2.46 Å的衍射数据,足以生成IRBP三级结构的原子模型。通过荧光光谱测定的视黄醇结合结果显示每条多肽链大致有一个视黄醇结合位点。
结合化学计量与建模数据表明并非所有模块在功能上都是等效的。全长IRBP结构的确定将是理解IRBP在视觉循环中功能作用的重大突破。此处取得的进展不仅将得出全长IRBP的结构,还将使我们了解模块在IRBP功能中是如何相互作用的。此外,这些研究将允许对结合有配体的配体结合位点进行表征。